Andrei Panferov
2026
Apertus: Democratizing Open and Compliant LLMs for Global Language Environments
Alejandro Hernández-Cano | Alexander Hägele | Allen Hao Huang | Angelika Romanou | Antoni-Joan Solergibert | Barna Pásztor | Bettina Messmer | Dhia Garbaya | Eduard Frank Ďurech | Ido Hakimi | Juan Garcia Giraldo | Mete Ismayilzada | Negar Foroutan | Skander Moalla | Tiancheng Chen | Vinko Sabolčec | Yixuan Xu | Michael Aerni | Badr AlKhamissi | Inés Altemir Marinas | Mohammad Hossein Amani | Matin Ansaripour | Ilia Badanin | Harold Benoit | Emanuela Boros | Nicholas John Browning | Fabian Bösch | Maximilian Böther | Niklas Canova | Camille Challier | Clément Charmillot | Jonathan Coles | Jan Milan Deriu | Arnout Devos | Lukas Drescher | Daniil Dzenhaliou | Maud Ehrmann | Dongyang Fan | Simin Fan | Silin Gao | Miguel Gila | María Grandury | Diba Hashemi | Alexander Miserlis Hoyle | Jiaming Jiang | Mark Klein | Andrei Kucharavy | Anastasiia Kucherenko | Frederike Lübeck | Roman Machacek | Theofilos Ioannis Manitaras | Andreas Marfurt | Kyle Matoba | Simon Matrenok | Henrique Mendonça | Fawzi Roberto Mohamed | Syrielle Montariol | Luca Mouchel | Sven Najem-Meyer | Jingwei Ni | Gennaro Oliva | Matteo Pagliardini | Elia Palme | Andrei Panferov | Léo Paoletti | Marco Passerini | Ivan Pavlov | Auguste Poiroux | Kaustubh Ponkshe | Nathan Ranchin | Javier Rando | Mathieu Sauser | Jakhongir Saydaliev | Mukhammadali Sayfiddinov | Marian Schneider | Stefano Schuppli | Marco Scialanga | Andrei Semenov | Kumar Shridhar | Raghav Singhal | Anna Sotnikova | Alexander Sternfeld | Ayush Kumar Tarun | Paul Teiletche | Jannis Vamvas | Xiaozhe Yao | Hao Zhao | Alexander Ilic | Ana Klimovic | Andreas Krause | Caglar Gulcehre | David Rosenthal | Elliott Ash | Florian Tramèr | Joost VandeVondele | Livio Veraldi | Martin Rajman | Thomas C. Schulthess | Torsten Hoefler | Antoine Bosselut | Martin Jaggi | Imanol Schlag
Proceedings of the 64th Annual Meeting of the Association for Computational Linguistics (Volume 1: Long Papers)
Alejandro Hernández-Cano | Alexander Hägele | Allen Hao Huang | Angelika Romanou | Antoni-Joan Solergibert | Barna Pásztor | Bettina Messmer | Dhia Garbaya | Eduard Frank Ďurech | Ido Hakimi | Juan Garcia Giraldo | Mete Ismayilzada | Negar Foroutan | Skander Moalla | Tiancheng Chen | Vinko Sabolčec | Yixuan Xu | Michael Aerni | Badr AlKhamissi | Inés Altemir Marinas | Mohammad Hossein Amani | Matin Ansaripour | Ilia Badanin | Harold Benoit | Emanuela Boros | Nicholas John Browning | Fabian Bösch | Maximilian Böther | Niklas Canova | Camille Challier | Clément Charmillot | Jonathan Coles | Jan Milan Deriu | Arnout Devos | Lukas Drescher | Daniil Dzenhaliou | Maud Ehrmann | Dongyang Fan | Simin Fan | Silin Gao | Miguel Gila | María Grandury | Diba Hashemi | Alexander Miserlis Hoyle | Jiaming Jiang | Mark Klein | Andrei Kucharavy | Anastasiia Kucherenko | Frederike Lübeck | Roman Machacek | Theofilos Ioannis Manitaras | Andreas Marfurt | Kyle Matoba | Simon Matrenok | Henrique Mendonça | Fawzi Roberto Mohamed | Syrielle Montariol | Luca Mouchel | Sven Najem-Meyer | Jingwei Ni | Gennaro Oliva | Matteo Pagliardini | Elia Palme | Andrei Panferov | Léo Paoletti | Marco Passerini | Ivan Pavlov | Auguste Poiroux | Kaustubh Ponkshe | Nathan Ranchin | Javier Rando | Mathieu Sauser | Jakhongir Saydaliev | Mukhammadali Sayfiddinov | Marian Schneider | Stefano Schuppli | Marco Scialanga | Andrei Semenov | Kumar Shridhar | Raghav Singhal | Anna Sotnikova | Alexander Sternfeld | Ayush Kumar Tarun | Paul Teiletche | Jannis Vamvas | Xiaozhe Yao | Hao Zhao | Alexander Ilic | Ana Klimovic | Andreas Krause | Caglar Gulcehre | David Rosenthal | Elliott Ash | Florian Tramèr | Joost VandeVondele | Livio Veraldi | Martin Rajman | Thomas C. Schulthess | Torsten Hoefler | Antoine Bosselut | Martin Jaggi | Imanol Schlag
Proceedings of the 64th Annual Meeting of the Association for Computational Linguistics (Volume 1: Long Papers)
Open LLMs enable AI practitioners to control development costs by building on an existing foundation for downstream applications. While offering substantial promise, current models often fail to meet the needs of users needing open solutions aligned with responsible AI principles, including data compliance, transparency, and inclusivity. In this work, we present Apertus, a fully open suite of large language models (LLMs) designed to address responsibility shortcomings in today’s open model ecosystem, namely data responsibility and global representation. Unlike many prior models that release weights without reproducible data pipelines or regard for content-owner rights, Apertus models are pretrained exclusively on openly available data, retroactively respecting robots.txt exclusions and filtering for non-permissive, toxic, and personally identifiable content. To mitigate risks of data memorization, we also adopt the Goldfish objective during pretraining, strongly suppressing verbatim recall of data while retaining downstream task performance. Apertus also drastically expands multilingual coverage, training on 15T tokens from over approximately 1800 languages, with about 40% of pretraining data allocated to non-English content. Released at 8B and 70B scales, Apertus approaches state-of-the-art results among fully open models on multilingual benchmarks, rivaling or surpassing open-weight counterparts.
2025
HIGGS: Pushing the Limits of Large Language Model Quantization via the Linearity Theorem
Vladimir Malinovskii | Andrei Panferov | Ivan Ilin | Han Guo | Peter Richtárik | Dan Alistarh
Proceedings of the 2025 Conference of the Nations of the Americas Chapter of the Association for Computational Linguistics: Human Language Technologies (Volume 1: Long Papers)
Vladimir Malinovskii | Andrei Panferov | Ivan Ilin | Han Guo | Peter Richtárik | Dan Alistarh
Proceedings of the 2025 Conference of the Nations of the Americas Chapter of the Association for Computational Linguistics: Human Language Technologies (Volume 1: Long Papers)
Quantizing large language models has become a standard way to reduce their memory and computational costs. Typically, existing methods focus on breaking down the problem into individual layer-wise sub-problems, and minimizing per-layer error, measured via various metrics. Yet, this approach currently lacks theoretical justification and the metrics employed may be sub-optimal. In this paper, we present a “linearity theorem” establishing a direct relationship between the layer-wise reconstruction error and the model perplexity increase due to quantization. This insight enables two novel applications: (1) a simple data-free LLM quantization method using Hadamard rotations and MSE-optimal grids, dubbed HIGGS, which outperforms all prior data-free approaches such as the extremely popular NF4 quantized format, and (2) an optimal solution to the problem of finding non-uniform per-layer quantization levels which match a given compression constraint, obtained by reduction to dynamic programming. On the practical side, we demonstrate improved accuracy-compression trade-offs on Llama-family models, advancing both data-free and non-uniform quantization for large language models.
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- Michael Aerni 1
- Badr AlKhamissi 1
- Dan Alistarh 1
- Mohammad Hossein Amani 1
- Matin Ansaripour 1
- Elliott Ash 1
- Ilia Badanin 1
- Harold Benoit 1
- Emanuela Boroş 1
- Antoine Bosselut 1
- Nicholas John Browning 1
- Fabian Bösch 1
- Maximilian Böther 1
- Niklas Canova 1
- Camille Challier 1
- Clément Charmillot 1
- Tiancheng Chen 1
- Jonathan Coles 1
- Jan Milan Deriu 1
- Arnout Devos 1
- Lukas Drescher 1
- Daniil Dzenhaliou 1
- Maud Ehrmann 1
- Dongyang Fan 1
- Simin Fan 1
- Negar Foroutan 1
- Silin Gao 1
- Dhia Garbaya 1
- Miguel Gila 1
- Juan Garcia Giraldo 1
- María Grandury 1
- Han Guo 1
- Çağlar Gu̇lçehre 1
- Ido Hakimi 1
- Diba Hashemi 1
- Alejandro Hernández-Cano 1
- Torsten Hoefler 1
- Alexander Miserlis Hoyle 1
- Allen Hao Huang 1
- Alexander Hägele 1
- Alexander Ilic 1
- Ivan Ilin 1
- Mete Ismayilzada 1
- Martin Jaggi 1
- Jiaming Jiang 1
- Mark Klein 1
- Ana Klimovic 1
- Andreas Krause 1
- Andrei Kucharavy 1
- Anastasiia Kucherenko 1
- Frederike Lübeck 1
- Roman Machacek 1
- Vladimir Malinovskii 1
- Theofilos Ioannis Manitaras 1
- Andreas Marfurt 1
- Inés Altemir Marinas 1
- Kyle Matoba 1
- Simon Matrenok 1
- Henrique Mendonça 1
- Bettina Messmer 1
- Skander Moalla 1
- Fawzi Roberto Mohamed 1
- Syrielle Montariol 1
- Luca Mouchel 1
- Sven Najem-Meyer 1
- Jingwei Ni 1
- Gennaro Oliva 1
- Matteo Pagliardini 1
- Elia Palme 1
- Léo Paoletti 1
- Marco Passerini 1
- Ivan Pavlov 1
- Auguste Poiroux 1
- Kaustubh Ponkshe 1
- Barna Pásztor 1
- Martin Rajman 1
- Nathan Ranchin 1
- Javier Rando 1
- Peter Richtárik 1
- Angelika Romanou 1
- David Rosenthal 1
- Vinko Sabolčec 1
- Mathieu Sauser 1
- Jakhongir Saydaliev 1
- Mukhammadali Sayfiddinov 1
- Imanol Schlag 1
- Marian Schneider 1
- Thomas C. Schulthess 1
- Stefano Schuppli 1
- Marco Scialanga 1
- Andrei Semenov 1
- Kumar Shridhar 1
- Raghav Singhal 1
- Antoni-Joan Solergibert 1
- Anna Sotnikova 1
- Alexander Sternfeld 1
- Ayush Kumar Tarun 1
- Paul Teiletche 1
- Florian Tramèr 1
- Jannis Vamvas 1
- Joost VandeVondele 1
- Livio Veraldi 1
- Yixuan Xu 1
- Xiaozhe Yao 1
- Hao Zhao 1
- Eduard Frank Ďurech 1